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Siddique, M. P.

Publications and source records attributed to Siddique, M. P..

2 recordsLinked to original sources

Antimicrobial resistance, pathogenicity and virulence patterns of Escherichia coli isolated from cockroaches (Blattella germanica) across diverse environments: a public health concern

This investigation explores the prevalence and antimicrobial resistance (AMR) of Escherichia coli isolated from Blattella germanica (cockroaches) from diverse locations, including homes, kitchens, and laboratories, over the course of six months, from August 2022 to January 2023. A total of 125 cockroaches were analyzed, yielding 67 (53%) of positive E. coli isolates, with kitchen environments having the highest incidence (57.77%). The existence of virulence genes (stx1, stx2, and rfbO157) was confirmed by pathogenicity assessments carried out on mouse model, which led to a considerable increase in morbidity and mortality. 82.08% of isolates showed evidence of resistance to at least one antibiotic, according to the antimicrobial susceptibility test with {beta}-lactams displaying the highest rates of resistance. Remarkably, complex resistance patterns were observed in 77.61% of the isolates, which were categorized as multidrug-resistant. Multiple antibiotic resistance genes (ARGs) were found by molecular analysis, particularly blaTEM and tetA as well as virulence-associated genes (VAGs) linked to extraintestinal pathogenic E. coli. Phylogenetic grouping indicated that 90.38% of the MDR isolates belonged to virulent groups B2 and D. These findings highlight the role of cockroaches as potential reservoirs for pathogenic E. coli, raising significant public health concerns regarding AMR. The study underscores the imperative need for thorough investigation and feasible control strategies to ease the dissemination of AMR in diverse contexts.

microbiology↗

Characterization of β-lactamase and virulence genes in Pseudomonas aeruginosa isolated from clinical, environmental and poultry sources in Bangladesh

The emergence and spread of multidrug-resistant pathogens like Pseudomonas aeruginosa are major concerns for public health worldwide. This study aimed to investigate the prevalence of circulating P. aeruginosa isolated from clinical, environmental and poultry sources in Bangladesh, their antibiotic susceptibility, {beta}-lactamase and virulence gene profiling using standard molecular and microbiology techniques. We collected 110 samples from five different locations, viz., BAU residential area (BAURA; n=15), BAU Healthcare Center (BAUHCC; n = 20), BAU Veterinary Teaching Hospital (BAUVTH; n=22), Poultry Market (PM; n=30) and Mymensingh Medical College Hospital (MCCH; n=23). After overnight enrichment in nutrient broth, 89 probable Pseudomonas isolates (80.90%) were screened through selective culture, gram-staining and biochemical tests. Using genus- and species-specific PCR, we confirmed 22 isolates (20.0%) as P. aeruginosa from these samples. Antibiogram profiling revealed that 100.0% P. aeruginosa isolates (n = 22) were multidrug-resistant isolates, showing resistance against Doripenem, Penicillin, Ceftazidime, Cefepime, and Imipenem. Furthermore, resistance to aztreonam was observed in 95.45% isolates. However, P. aeruginosa isolates showed a varying degree of sensitivity against Amikacin, Gentamicin, and Ciprofloxacin. The blaTEM gene was detected in 86.0% isolates, while blaCMY, blaSHV and blaOXA, were detected in 27.0%, 18.0% and 5.0% of the P. aeruginosa isolates, respectively. The algD gene was detected in 32.0% isolates, whereas lasB and exoA genes were identified in 9.0% and 5.0% P. aeruginosa isolates. However, none of the P. aeruginosa isolates harbored exoS gene. Thus, this study provides novel and important data on the resistance and virulence of P. aeruginosa currently circulating in clinical, environmental and poultry environment of Bangladesh. These data provide important insights into the emergence of {beta}-lactamase resistance in P. aeruginosa, highlighting its usefulness in the treatment and control of P. aeruginosa infections in both humans and animals.

microbiology↗